The Structural Integrity of Recycled Aggregate Concrete Produced With Fillers and Pozzolans: Woodhead Publishing Series in Civil and Structural Engineering
Editat de Paul O. Awoyera, Carlos Thomas, Mehmet Serkan Kirgizen Limba Engleză Paperback – 6 dec 2021
The final section looks at issues such as performance effect, LCA, environmental impact, sustainability and cost benefit analysis. With detailed case studies throughout, this volume will provide useful information for all stakeholders involved in the built environment, including materials scientists, civil engineers, builders, architects and policymakers.
- Identifies several potential by-products, fillers and pozzolans for the development of durable concrete
- Acts as a guidebook for constructors and researchers working in the broad field of material science, engineering and in-situ application
- Presents the durability properties of concrete made of by-products, fillers and pozzolans
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Specificații
ISBN-13: 9780128241059
ISBN-10: 0128241055
Pagini: 496
Ilustrații: 300 illustrations (40 in full color)
Dimensiuni: 152 x 229 mm
Greutate: 0.66 kg
Editura: ELSEVIER SCIENCE
Seria Woodhead Publishing Series in Civil and Structural Engineering
ISBN-10: 0128241055
Pagini: 496
Ilustrații: 300 illustrations (40 in full color)
Dimensiuni: 152 x 229 mm
Greutate: 0.66 kg
Editura: ELSEVIER SCIENCE
Seria Woodhead Publishing Series in Civil and Structural Engineering
Public țintă
Academic and industrial researchers, materials scientists and civil engineers who are working in the development of construction materials and utilization of waste and other fine by-products in the production of concrete. Postgraduate studentsCuprins
Section I - Potential fillers and pozzolans for recycled aggregate concrete
1. The use of foundry sand for recycled aggregate concrete
2. Influence of fly ash in physical and mechanical properties of recycled aggregate concrete
3. Use of recycled fines from waste concrete as an admixture in new concrete
4. Use of agro-industrial waste as a filler for structural reinforcement mortars
5. Colemanite filler from wastes in recycled concrete
6. Thermal performance of concrete with recycled concrete powder as partial cement replacement and recycled CDW aggregate
7. The use of slags in recycled aggregate concrete
8. The use of rice hush ash in eco-concrete
9. Specialized concrete made of processed biomass ash: lightweight, self-compacting, and geopolymeric concrete
Section II - Rheology and hydration phenomenon in concrete containing fillers and pozzolans
10. Mineralogy and interfacial transition zone features of recycled aggregate concrete
11. Water requirement for recycled concrete
Section III - Mechanical and microscale nature in recycled concrete
12. Mechanical properties of recycled aggregate concrete with bottom ash additions
13. Macroscopic mechanical characterization of self-compacting recycled concrete mixed with natural lime filler
14. Shear strength assessment of reinforced recycled aggregate concrete member
15. Upcycling CO2 for enhanced performance of recycled aggregate concrete and modeling of properties
16. Properties of recycled aggregate concrete designed with equivalent mortar volume method
17. Bending behavior of ecological fiber reinforced concrete
18. A penalized regression approach to prediction of triaxial performance of recycled aggregate concrete
Section IV - Issues associated with recycled concrete
19. Overview on environmental impact of recycled aggregate concrete incorporating pozzolans or fillers
20. Durability assessment of recycled aggregate in concrete production
1. The use of foundry sand for recycled aggregate concrete
2. Influence of fly ash in physical and mechanical properties of recycled aggregate concrete
3. Use of recycled fines from waste concrete as an admixture in new concrete
4. Use of agro-industrial waste as a filler for structural reinforcement mortars
5. Colemanite filler from wastes in recycled concrete
6. Thermal performance of concrete with recycled concrete powder as partial cement replacement and recycled CDW aggregate
7. The use of slags in recycled aggregate concrete
8. The use of rice hush ash in eco-concrete
9. Specialized concrete made of processed biomass ash: lightweight, self-compacting, and geopolymeric concrete
Section II - Rheology and hydration phenomenon in concrete containing fillers and pozzolans
10. Mineralogy and interfacial transition zone features of recycled aggregate concrete
11. Water requirement for recycled concrete
Section III - Mechanical and microscale nature in recycled concrete
12. Mechanical properties of recycled aggregate concrete with bottom ash additions
13. Macroscopic mechanical characterization of self-compacting recycled concrete mixed with natural lime filler
14. Shear strength assessment of reinforced recycled aggregate concrete member
15. Upcycling CO2 for enhanced performance of recycled aggregate concrete and modeling of properties
16. Properties of recycled aggregate concrete designed with equivalent mortar volume method
17. Bending behavior of ecological fiber reinforced concrete
18. A penalized regression approach to prediction of triaxial performance of recycled aggregate concrete
Section IV - Issues associated with recycled concrete
19. Overview on environmental impact of recycled aggregate concrete incorporating pozzolans or fillers
20. Durability assessment of recycled aggregate in concrete production